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1)  IR transmitting
透红外
1.
The development and application of chalcogenide glasses as an IR transmitting material with high performance have long been impeded by insufficient degree of purity present in glasses.
高性能透红外硫系玻璃材料的开发和应用在很大程度上受到杂质对透过性能影响的制约。
2)  infrared transparent
红外透明
3)  infrared transmission
红外透射
1.
the SEM results of etched pit density (EPD) of the radiated GaAs wafer by preferential etching with KOH melt show the "W"linear profiles of lightly chromium doped GaAs crystals; The infrared transmission results of optical processing GaAs samples show that the effect of EPD on infrared transmission can be neglected if the value of.
红外透射测量结果表明:当位错密度不太高时,位错引入的电子态的体密度低,位错的径向分布对红外透过率的影响很小;当位错密度很高时,其对红外透过率的影响不可忽视。
2.
Using the infrared transmission theory, which is to say that the bonding part of thesample can make the light pass, and the un-bonding part of the sample will block the light, at thesame time, the unique method of cold lamp-house is used to manufacture the instrument of testingthe wafer bonding quality in order to select the high quality one for the next technical research.
利用红外透射原理,即根据键合晶片中键合部分可以透光而未键合部分几乎不能透光的原理,同时采用冷光源的独特方法构建了键合质量测试平台以用于初步筛选符合下一步工艺探索的高质量键合晶片。
3.
It was observed that, after boiling the samples in water, the infrared transmittance increased, the absorption edge was moved to the short wave direction and the absorption below the energy gap was reduced, and that the range of infrared transmission was narrowed.
采用红外透射测量观测了氢钝化对Hg_(1-x)Cd_xTe晶片的影响,用分层模型计算了晶片透射率,分析了氢钝化增加其透射率、吸收边向短波方向移动、低于禁带宽度能量的吸收降低、透过范围减小的原因。
4)  infrared transmittance increasing
红外增透
5)  function of permeating infrared
透红外性
1.
At present,the spectrum which produced after the electric-heating-film electrifing in heating and the function of permeating infrared on basic film still exist problems.
目前采暖用电热膜在通电后产生的辐射光谱及基体的透红外性能存在着问题,使电热膜采暖耗电量大。
6)  the transmission in the mid-infrared
红外透过
1.
Measurements were also made of the transmission in the mid-infrared.
利用改进的布里奇曼法进行了生长KPb2Cl5单晶的实验,得到了直径15mm的原晶,并测试了晶体样品的基本红外透过性能。
补充资料:氟化锶透红外陶
分子式:
CAS号:

性质:又称热压氟化锶陶瓷。主晶相为氟化锶的多晶材料。在3~9μm波长范围内透过率约为80%。常用热压烧结工艺制取(热压温度650℃,压力约250MPa)。用作红外透光材料。

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